Image Sensor. NOIM2SM9600A Datasheet

NOIM2SM9600A Sensor. Datasheet pdf. Equivalent

Part NOIM2SM9600A
Description Rolling Shutter CMOS Image Sensor
Feature NOIM1SM9600A, NOIM2SM9600A Advance Information MANO 9600 9.6 MegaPixel Rolling Shutter CMOS Image S.
Manufacture ON Semiconductor
Datasheet
Download NOIM2SM9600A Datasheet



NOIM2SM9600A
NOIM1SM9600A,
NOIM2SM9600A
Advance Information
MANO 9600 9.6 MegaPixel
Rolling Shutter CMOS
Image Sensor
http://onsemi.com
Features
9.6 MegaPixel Resolution in 3840 × 2500 Format
2.4 mm × 2.4 mm Square Pixels (Shared 4T Pixel Architecture)
2/3 inch Optical Format
Monochrome (SM) Version
20 Frames per Second (fps) at Full Resolution
200 mW / 500 mW Power Consumption at 5 fps / 20 fps
Four LowVoltage Differential Signaling (LVDS) High Speed Serial
Outputs or One 10bit CMOS Output
On-chip 10-bit Analog-to-Digital Converter (ADC)
Windowing to Attain Higher Frame Rate
Rolling Shutter
On-chip Fixed Pattern Noise (FPN) Correction
Serial Peripheral Interface (SPI)
Automatic Exposure Control (AEC)
Phase Locked Loop (PLL)
High Dynamic Range (HDR)
Figure 1. MANO 9600 Package Photograph
Dual Power Supply (1.8 V and 3.3 V)
0°C to 70°C Operational Temperature Range
52-pin LCC
500 mW Power Dissipation (LVDS)
200 mW Power Dissipation (CMOS)
These Devices are PbFree and are RoHS Compliant
Applications
Biometrics (Fingerprinting)
Machine Vision
Inspection
Microscopy
Description
The MANO9600 is a rolling shutter CMOS image sensor with a resolution of 3840 x 2500 pixels.
The high sensitivity 2.4 mm x 2.4 mm pixels supports correlated double sampling readout reducing noise and increasing
dynamic range.
A high level of programmability using a four wire serial peripheral interface enables the user to read out specific regions
of interest.
Higher frame rates are achieved with region of interest or subsampled readout modes. The sensor has builtin features for
bias control and power supply regulation.
The sensor has onchip programmable gain amplifiers and 10bit A/D converters. The integration time and gain parameters
can be reconfigured without any visible image artifact. Optionally the onchip automatic exposure control loop (AEC) controls
these parameters dynamically. The image’s black level is either calibrated automatically or can be adjusted by adding a user
programmable offset.
The image data interface of the M1SM part consists of four LVDS lanes running at 620 Mbps, facilitating frame rates up
to 20 frames per second. A separate synchronization and clock channel containing payload information is provided to facilitate
the image reconstruction at the receive end. The M2SM part provides a parallel CMOS output interface at reduced frame rate
of 5 frames per second.
The MANO 9600 is packaged in a 52pin LCC package and is available in a monochrome without micro lens.
Contact your local ON Semiconductor office for more information.
This document contains information on a new product. Specifications and information herein are subject to change without notice.
© Semiconductor Components Industries, LLC, 2014
February, 2014 Rev. P0
1
Publication Order Number:
NOIM1SM9600A/D



NOIM2SM9600A
NOIM1SM9600A, NOIM2SM9600A
ORDERING INFORMATION
Part Number
NOIM1SM9600A-QDC
NOIM2SM9600A-QDC
Description
LVDS Interface mono
CMOS Interface mono
Package
52pin LCC package
The M1-SM base part is used to reference the mono version of the LVDS interface; the M2-SM base part is used to reference
the mono version of the CMOS interface.
NOTE: The MANO 9600 does not utilize a micro lens.
ORDERING CODE DEFINITION
ON Semiconductor
Opto
Image Sensors
M1: MANO LVDS
M2: MANO CMOS
S: Standard Process
M = Mono (no microlens)
N O I M1 S M 9600 A Q D C
Commercial Temperature Range
D = D263 Glass
Package Q = LCC
Additional Functionality
9.6 MegaPixel Resolution
PACKAGE MARK
Following is the mark on the bottom side of the package with Pin 1 to the left center
Line 1: NOI xx SM9600A where xx denotes LVDS (M1) / CMOS (M2)
Line 2: -QDC
Line 3: AWLYYWW; where line 3 is the lot traceability as shown below
XXXXX = Specific Device Code
A = Assembly Location
WL = Wafer Lot
YY = Year
WW = Work Week
NNNN = Serial Number
Figure 2. Generic Package Mark
http://onsemi.com
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